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Towards Autonomous Smart Sensing Systems

机译:对自主智能传感系统

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Since the 1990's, researchers in both academia and industry have been exploring ways to exploit the potential for Wireless Sensor Networks (WSNs) to revolutionize our understanding of - and interaction with - the world around us. WSNs have therefore been a major focus of research over the past 20 years. While WSNs offer a persuasive solution for accurate real-time sensing of the physical world, they are yet to be as ubiquitous as originally predicted when the technology was first envisaged. Technical difficulties exist which have inhibited the anticipated uptake in WSN technologies. The most challenging of these have been identified as system reliability, battery lifetime, maintenance requirements, node size and ease of use. Over the past decade, the Wireless Sensor Networks (WSN) group at the Tyndall National Institute, has been at the forefront of driving the vision of ubiquitously deployed, extended lifetime, low power consumption embedded systems providing information rich data streams wirelessly in (close to) real-time. In this time, the WSN group has developed multiple novel, first of kind, wireless multi-sensor systems and deployed these in the world around us, overcoming the technical challenges associated with ensuring robust and reliable longterm data sets from our environment. This work is focused on investigating and addressing these challenges through the development of the new technologies and system integration methodologies required to facilitate and implement WSNs and validate these in real deployments. Specifically, discussed are the development and deployment of novel WSN systems in the built environment, environmental monitoring and fitness and health monitoring systems. The key research challenges identified and discussed are: a) The development of resource-constrained, extremely low power consumption systems incorporating energy-efficient hardware and software algorithms. b) The development of highly reliable extremely long duration deployments...
机译:自1990年代以来,学术界和工业的研究人员一直在探索利用无线传感器网络(WSNS)的潜力来彻底改变我们对与我们周围世界的理解的潜力的方法。因此,WSN已成为过去20年的重大研究焦点。虽然WSNS提供了一个有说服力的解决方案,以便准确地对物理世界进行实时感测,但它们尚未像最初预测的那样普遍存在,虽然最初预测了该技术。存在技术困难,抑制了WSN技术的预期摄取。这些最具挑战性的是系统可靠性,电池寿命,维护要求,节点大小和易用性。在过去十年中,Tyndall国家研究所的无线传感器网络(WSN)组一直处于推动普遍部署,延长的寿命,低功耗嵌入式系统的最前沿,无线地提供信息丰富的数据流(靠近) ) 即时的。在这段时间内,WSN组开发了多种新颖,首先,无线多传感器系统,并在我们周围部署了这些,克服了与从我们的环境中确保强大和可靠的长期数据集相关的技术挑战。通过开发促进和实施WSNS所需的新技术和系统集成方法并在实际部署中验证这些问题,这项工作致力于调查和解决这些挑战。具体而言,讨论的是在内置环境,环境监测和健身和健康监测系统中开发和部署新型WSN系统。确定和讨论的关键研究挑战是:a)利用节能硬件和软件算法的资源受限的极低功耗系统的发展。 b)开发高度可靠的非常长的持续时间部署......

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